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Real-Time Estimation and Management of Hydrate Plugging Risk During Deep-Water Gas Well Testing

机译:深水汽油井测试中水合物堵漏风险的实时估算与管理

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Hydrate formation and deposition usually exist during deep-water gas well testing, which easily cause plugging accident in the testing tubing if it was not found and handled in time. A method to estimate and manage hydrate plugging risk in real-time during deep-water gas well testing is developed in this work. This method mainly includes the following steps: predicting hydrate stability region, calculating hydrate behaviors, analyzing the effect of hydrate behaviors on the variation of wellhead pressure, monitoring the variation of wellhead pressure and estimating hydrate plugging risk in real-time, and managing hydrate plugging risk in real-time. As hydrates continue to form and deposit, the effective inner diameter of the tubing decreases, and the wellhead pressure also decreases accordingly. The risk of hydrate plugging can be estimated by monitoring the variation of wellhead pressure. When the wellhead pressure decreases to the critical value for safety at a given gas production rate, it is indicated that hydrate plugging is likely to occur. Under this condition, hydrate inhibitor is needed to inject into the tubing to reduce the severity of hydrate plugging, and real-time monitoring of wellhead pressure variation is also needed to guarantee the risk of hydrate plugging in the testing tube is within safe range. By using this method, the real-time estimation and management of hydrate plugging during the testing process can be achieved, which can provide basis for the safe and efficient testing of deep-water gas wells.
机译:水合物形成和沉积通常存在于深水气体井测试中,如果没有发现并及时处理测试管道中容易引起堵塞事故。在这项工作中开发了一种在深水气体井测试中实时估计和管理水合物堵塞风险的方法。该方法主要包括以下步骤:预测水合物稳定性区域,计算水合物行为,分析水合物行为对井口压力变化的影响,监测井口压力的变化,实时估算水合物堵漏风险,并管理水合物堵漏实时风险。随着水合物继续形成和沉积,管道的有效内径降低,并且井口压力也相应地降低。通过监测井口压力的变化,可以估计水合物堵塞的风险。当井口压力在给定的气体生产速率下对安全性的临界值降低时,表示可能发生水合物堵塞。在这种情况下,需要水合物抑制剂注入管道中以降低水合物堵塞的严重程度,并且还需要对井口压力变化的实时监测来保证测试管中水合物堵塞的风险在安全范围内。通过使用该方法,可以实现测试过程中水合物堵塞的实时估计和管理,这可以为深水气井安全有效地测试提供依据。

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